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Characterization of sustainable interlocking burnt clay brick wall panels: An alternative to conventional bricks

机译:可持续联锁的黏土砖砌墙板的特性:常规砖的替代品

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The application of interlocking burnt clay brick can be a viable option for conventional brick masonry due to its improved structural performance and ease in construction. Furthermore, the incorporation of waste marble powder (WMP) in interlocking burnt clay bricks can lead to economical and sustainable masonry construction. This research program was mainly categorized into two stages: material characterization of developed interlocking burnt clay brick and mechanical performance of wall panels incorporating interlocking bricks. Various dosages of WMP (i.e. 10%, 20% and 30% by clay weight) in interlocking bricks were investigated. Results showed that the lighter interlocking bricks can be manufactured with the addition of WMP. It was observed that the compressive strength of interlocking burnt clay bricks decreased with the addition of WMP. However, the compressive strength of burnt clay bricks with 10% of WMP satisfies the local building code requirement for masonry construction. Test results on wall panels revealed that the interlocking burnt clay brick wall exhibited 43% increase in out of plane load carrying capacity compared to that of the conventional brick wall panels. Similarly, higher deflection at peak load and improved toughness was observed for interlocking brick wall panels. Moreover, cracking pattern transformed from horizontal slide shear in conventional brick wall to diagonal shear cracks in interlocking brick wall panels. The findings of this research demonstrate that the addition of 10% WMP in interlocking burnt clay brick can be a potential option for sustainable masonry wall leading to more eco-friendly and economical construction. (C) 2019 Elsevier Ltd. All rights reserved.
机译:对于传统的砖石砌筑来说,联锁烧制的粘土砖的应用可能是一种可行的选择,因为它改善了结构性能并且易于施工。此外,将废大理石粉(WMP)掺入联锁的烧制粘土砖中可以导致经济和可持续的砌体建筑。这项研究计划主要分为两个阶段:已开发的互锁陶土砖的材料表征和包含互锁砖的墙板的机械性能。研究了联锁砖中WMP的各种用量(即粘土重量的10%,20%和30%)。结果表明,通过添加WMP可以制造更轻的连锁砖。观察到,联锁烧砖的抗压强度随WMP的添加而降低。但是,WMP为10%的烧制粘土砖的抗压强度满足砖石建筑的当地建筑规范要求。在墙板上的测试结果表明,与传统砖砌墙板相比,联锁燃烧的粘土砖砌墙的平面外承载能力提高了43%。类似地,对于互锁的砖墙面板,在峰值载荷下观察到更高的挠度并提高了韧性。此外,开裂模式从传统砖墙中的水平滑动剪切转变为互锁砖墙板中的对角剪切裂纹。这项研究的结果表明,在联锁的陶土砖中添加10%WMP可能是可持续砌体墙的潜在选择,从而使建筑更环保,更经济。 (C)2019 Elsevier Ltd.保留所有权利。

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